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Ex-situ tracking solid oxide cell electrode microstructural evolution in a redox cycle by high resolution ptychographic nanotomography

机译:高分辨率谱图纳米断层扫描在氧化还原循环中异位追踪固体氧化物电池电极的微观结构演变

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摘要

For solid oxide fuel and electrolysis cells, precise tracking of 3D microstructural change in the electrodes during operation is considered critical to understand the complex relationship between electrode microstructure and performance. Here, for the first time, we report a significant step towards this aim by visualizing a complete redox cycle in a solid oxide cell (SOC) electrode. The experiment demonstrates synchrotron-based ptychography as a method of imaging SOC electrodes, providing an unprecedented combination of 3D image quality and spatial resolution among non-destructive imaging techniques. Spatially registered 3D reconstructions of the same location in the electrode clearly show the evolution of the microstructure from the pristine state to the oxidized state and to the reduced state. A complete mechanical destruction of the zirconia backbone is observed via grain boundary fracture, the nickel and pore networks undergo major reorganization and the formation of internal voids is observed in the nickel-oxide particles after the oxidation. These observations are discussed in terms of reaction kinetics, electrode mechanical stress and the consequences of redox cycling on electrode performance. (C) 2017 Elsevier B.V. All rights reserved.
机译:对于固体氧化物燃料和电解电池,在操作过程中精确跟踪电极中3D微观结构的变化被认为对于了解电极微观结构和性能之间的复杂关系至关重要。在这里,我们第一次通过可视化固态氧化物电池(SOC)电极中的完整氧化还原循环报告了朝着这一目标迈出的重要一步。该实验证明了基于同步加速器的分谱技术是一种对SOC电极成像的方法,在无损成像技术中提供了3D图像质量和空间分辨率的空前组合。电极中相同位置的空间配准3D重建清楚地显示了微观结构从原始状态到氧化状态再到还原状态的演变。经由晶界断裂观察到氧化锆主链的完全机械破坏,镍和孔网络经历重大重组,并且在氧化后在氧化镍颗粒中观察到内部空隙的形成。根据反应动力学,电极机械应力以及氧化还原循环对电极性能的影响讨论了这些观察结果。 (C)2017 Elsevier B.V.保留所有权利。

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